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杰克豆脲酶(EC 3.5.1.5)。III. 活性位点镍离子在β-巯基乙醇、氨基磷酸酯和氟化物抑制作用中的参与情况。

Jack bean urease (EC 3.5.1.5). III. The involvement of active-site nickel ion in inhibition by beta-mercaptoethanol, phosphoramidate, and fluoride.

作者信息

Dixon N E, Blakeley R L, Zerner B

出版信息

Can J Biochem. 1980 Jun;58(6):481-8. doi: 10.1139/o80-064.

Abstract

Interaction of beta-mercaptoethanol with urease produces large, rapid and fully reversible spectral changes in that part of the electronic absorption spectrum which is associated with the tightly bound nickel ions. The spectrophotometrically determined value of the dissociation constant of the beta-mercaptoethanol-urease complex (0.9 +/- 0.05 mM at pH 7.12 and 25 degrees C) is in agreement with the Ki (0.72 +/- 0.26 mM) for beta-mercaptoethanol acting as a competitive inhibitor in the hydrolysis of urea. This constitutes direct evidence that the nickel in jack bean urease is at the active site. Inhibition of urease by phosphoramidate is slowly achieved and slowly reversed, and upon reactivation of the isolated phosphoramidate-urease complex, phosphoramidate is regenerated in good yield. Spectrophotometric experiments indicate that phosphoramidate binds to nickel ion in urease. Competition with beta-mercaptoethanol was used to determine a dissociation constant (1.23 +/- 0.10 mM at pH 7.12 and 25 degrees C) for a fluoride-evidence is presented which indicates that in the presence of urea, a ternary complex (fluoride-urea-urease) is formed.

摘要

β-巯基乙醇与脲酶相互作用,会在电子吸收光谱中与紧密结合的镍离子相关的部分产生大的、快速且完全可逆的光谱变化。通过分光光度法测定的β-巯基乙醇-脲酶复合物的解离常数(在pH 7.12和25℃时为0.9±0.05 mM)与β-巯基乙醇作为尿素水解竞争性抑制剂的Ki(0.72±0.26 mM)一致。这构成了刀豆脲酶中镍位于活性位点的直接证据。氨基磷酸酯对脲酶的抑制作用实现缓慢且逆转缓慢,并且在分离的氨基磷酸酯-脲酶复合物重新激活时,氨基磷酸酯能以良好的产率再生。分光光度实验表明氨基磷酸酯与脲酶中的镍离子结合。利用与β-巯基乙醇的竞争作用来确定氟化物的解离常数(在pH 7.12和25℃时为1.23±0.10 mM)——有证据表明在尿素存在的情况下会形成三元复合物(氟化物-尿素-脲酶)。

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